EP3108339A2 - Schaltvorrichtung, verwendung der schaltvorrichtung, arbeitssystem sowie arbeitsverfahren - Google Patents
Schaltvorrichtung, verwendung der schaltvorrichtung, arbeitssystem sowie arbeitsverfahrenInfo
- Publication number
- EP3108339A2 EP3108339A2 EP15707871.8A EP15707871A EP3108339A2 EP 3108339 A2 EP3108339 A2 EP 3108339A2 EP 15707871 A EP15707871 A EP 15707871A EP 3108339 A2 EP3108339 A2 EP 3108339A2
- Authority
- EP
- European Patent Office
- Prior art keywords
- switching device
- display
- actuating
- thickness direction
- task
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Classifications
-
- H—ELECTRICITY
- H03—ELECTRONIC CIRCUITRY
- H03K—PULSE TECHNIQUE
- H03K17/00—Electronic switching or gating, i.e. not by contact-making and –breaking
- H03K17/94—Electronic switching or gating, i.e. not by contact-making and –breaking characterised by the way in which the control signals are generated
- H03K17/965—Switches controlled by moving an element forming part of the switch
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H9/00—Details of switching devices, not covered by groups H01H1/00 - H01H7/00
- H01H9/02—Bases, casings, or covers
- H01H9/0271—Bases, casings, or covers structurally combining a switch and an electronic component
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/03—Arrangements for converting the position or the displacement of a member into a coded form
- G06F3/033—Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
- G06F3/0354—Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor with detection of two-dimensional [2D] relative movements between the device, or an operating part thereof, and a plane or surface, e.g. 2D mice, trackballs, pens or pucks
- G06F3/03543—Mice or pucks
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/03—Arrangements for converting the position or the displacement of a member into a coded form
- G06F3/033—Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
- G06F3/0362—Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor with detection of one-dimensional [1D] translations or rotations of an operating part of the device, e.g. scroll wheels, sliders, knobs, rollers or belts
-
- H—ELECTRICITY
- H03—ELECTRONIC CIRCUITRY
- H03K—PULSE TECHNIQUE
- H03K17/00—Electronic switching or gating, i.e. not by contact-making and –breaking
- H03K17/94—Electronic switching or gating, i.e. not by contact-making and –breaking characterised by the way in which the control signals are generated
- H03K17/96—Touch switches
- H03K17/9627—Optical touch switches
-
- H—ELECTRICITY
- H03—ELECTRONIC CIRCUITRY
- H03K—PULSE TECHNIQUE
- H03K17/00—Electronic switching or gating, i.e. not by contact-making and –breaking
- H03K17/94—Electronic switching or gating, i.e. not by contact-making and –breaking characterised by the way in which the control signals are generated
- H03K17/96—Touch switches
- H03K17/964—Piezoelectric touch switches
-
- H—ELECTRICITY
- H03—ELECTRONIC CIRCUITRY
- H03K—PULSE TECHNIQUE
- H03K2217/00—Indexing scheme related to electronic switching or gating, i.e. not by contact-making or -breaking covered by H03K17/00
- H03K2217/94—Indexing scheme related to electronic switching or gating, i.e. not by contact-making or -breaking covered by H03K17/00 characterised by the way in which the control signal is generated
- H03K2217/965—Switches controlled by moving an element forming part of the switch
- H03K2217/9651—Switches controlled by moving an element forming part of the switch the moving element acting on a force, e.g. pressure sensitive element
Definitions
- Switching device use of the switching device, working system
- the invention relates to an electrical switching device, a use of the switching device, a work system and working methods.
- the object of the present invention is an electrical switching device
- a switching device which is operable from an actuating side, wherein the switching device comprises a plate-shaped base body with a connection surface, which faces the actuating side of the electrical switching device, seen in a thickness direction arranged on this plate-shaped Operating part with one of the actuating side facing
- connection surface a connection device of one of an elastic material, which is attached to an inner region of the connection surface of the actuating part and with a second surface on an inner region of the connection surface of the base body, at least one sensor which is located between the base body and the actuating part and located in the thickness direction laterally of the connecting device, so that each position of each located at this area of the second surface in the thickness direction can be detected with each sensor.
- the actuating part may comprise a display which is located in an inner region, viewed in the thickness direction, of the actuating surface of the actuating part.
- the connecting device made of elastic material is a
- a switching device operable from an operation side (S1), the switching device (1) comprising: a plate-shaped base body (10) having a connection surface (10a) facing the operation side (S1) of the electric Facing switching device (1), seen in a thickness direction (Z) arranged on this plate-shaped actuating part (20) with one of the actuating side (S) facing the actuating surface (20a) and opposite to this located terminal surface (20b), a connecting device (30) having at least one connecting layer (31) of one of an elastic material, which at an inner portion (20c) of the connection surface (20b) of the actuating part (20) and with a second surface (30b) at an inner Area (11) of the connection surface (10 a) of the base body (10) is fixed, at least one sensor (41, 42, 43, 44) located between the base body (10) and the actuating part (20) and located in the thickness direction (Z) side of the connecting device (30), so that with each
- Connecting device (30) consists of at least one connecting layer (31).
- a switching device (1) is provided by a
- Actuating side (S1) is operable provided, wherein the switching device (1) comprises: a plate-shaped base body (10) having a connection surface (10a), which faces the actuating side (S1) of the electrical switching device (1), an in a thickness direction (Z) seen on this arranged plate-shaped actuating part (20) with one of the actuating side (S1) facing
- connection device (30) having at least one connecting layer (31) of one of an elastic material attached to an outer portion of the terminal surface (20b) of Actuating part (20) and with a second surface (30b) at an outer region of the connection surface (10a) of the base body (10) is fixed, at least one sensor (41, 42, 43, 44) between the base body (10 ) and the operating part (20) and located in the thickness direction (Z) side of the connecting device (30) are located, so that with each
- the Connecting device (30) consists of at least one connecting layer (31).
- a switching device comprising: a housing device (H) having a plate-shaped base body (10) with a terminal surface (10a) facing an operation side (S1) of the electric switching device (1), and having one
- Housing part (H1) seen in a thickness direction (Z) arranged on this piattenförmiges actuating part (20) with one of the actuating side (S1) facing the actuating surface (20a) and a counter to this located connection surface (20b), an in the display part (20) integrated display (80) for displaying
- the housing part (H1) comprises: a side wall (H4), the at least the connecting device (30) and the actuating part (20) in the thickness direction (Z) seen
- Actuating side (S1) connects to the side wall (H4) and forms a central opening (H7), in which extends at least partially the display (80), a connecting device (30) with at least one connecting layer (31) of one of an elastic Material attached to an inner portion (20c) of the terminal surface (20b) of the actuator (20) and to a second surface (30b) on an inner portion (11) of the terminal surface (10a) of the body (10) is at least one sensor (41, 42, 43, 44) located between the main body (0) and the actuating part (20) and in the thickness direction (Z) seen laterally of the connecting device (30) are located, so that with each
- Connection layer (31) exist.
- a switching device comprising: a housing device (G) having a plate-shaped base body (10) with a connection surface (10a) facing the operation side (S1) of the electrical switching device (1), and having a housing part (G1), a seen in a thickness direction (Z) on this plate-shaped actuating member (20) with one of an actuating side (S1) facing
- the housing part (H1) comprises: one extending from the base body (10)
- connection surface (10a) of the base body (10) at least one sensor (41, 42, 43, 44) between the base body (10) and the actuating part (20) and are located in the thickness direction (Z) side of the connecting device (30) are located, so that with each
- Connection layer (31) exist.
- a switching device comprising: a plate-shaped main body (10) having a terminal surface (10a) facing the operating side (S1) of the electric switching device (1), viewed in a thickness direction (Z) on this arranged plate-shaped actuating part (20) with one of an actuating side (S1) facing
- the actuating part (20) prefferably has a display (80) which, in an inner region (20e), seen in the thickness direction (Z),
- Actuating surface (20 a) of the actuating part (20) is located. in that the inner display area (20e) is designed as a depression formed on the actuating surface (20a), and the display (80), viewed in the thickness direction (Z), is located at least partially in the depression.
- Operating part (20) is optically transparent at least in area proportions and wherein the base body (10) in the thickness direction (Z) seen inner display area (10e), in which the display (80) is arranged, wherein the position of the inner display Range (10e) is defined according to one of the following alternatives: the display area (20e) in the thickness direction (Z) seen within a range spanned by the sensors (41, 42, 43, 44) or between
- Sensors (41, 42, 43, 44) and in the thickness direction (Z) at least partially within at least one of the at least one connecting layer (31), wherein the at least one connecting layer, within which the display area (20e) is located optically transparent.
- the inner display region (10e) is embodied as a depression formed on the connection surface (10a) and the display (80), viewed in the thickness direction (Z), is located at least partially in the depression ,
- the plate-shaped actuating part (20) is designed as a rigid part.
- the plate-shaped actuating part (20) is designed as a bending-elastic part.
- Switching device (1) each having two sensors (41, 42, 43, 44), of which two with respect to the centroid (FS) of the
- Actuating surface (20a) are arranged opposite to each other.
- the at least one sensor (41, 42, 43, 44) is designed in such a way that it in each case contacts the distance from the same to the point of the connection surface (20b) of the actuating part (20b) lying opposite it. 20).
- the at least one sensor (41, 42, 43, 44) is designed as an optical sensor.
- the at least one sensor (41, 42, 43, 44) is designed as an inductive sensor.
- the at least one sensor (41, 42, 43, 44) is designed as a mechanical sensors with a switching component.
- Switching device has a connection (eg via WLAN) to a data network
- application-related data contents can be downloaded via the data network connection after evaluation of the inputs made via the sensors (41 to 44) from a central database and can be displayed on the display 80 ,
- Switching device as a device for entering logistic data in one
- Switching device as a device for entering logistic data and for outputting logistic data in each case in a storage area.
- Switching device with a display as an interactive man-machine interface in logistics and other industrial applications, especially in the
- Warehousing and other material flow systems wherein on the display a number of task-related alternatives can be displayed, via an input of the user who acts on sensors (41 to 44), a selection of the displayed alternatives is done, whereupon the WLAN connection from the central Database the next action or the next selection to be made.
- an application of an embodiment of the switching device having a display for menu-driven selection of a task in warehouse logistics and in other industrial applications, wherein apps are kept available in the central database for a plurality of tasks via the network connection on the Display reproducible action sequences, alternatives to the task-related selection and / or to necessary inputs of information displayable, the user selects the app corresponding to the upcoming task and interactively using the input options via the sensors 41 to 44 and in compliance with the representations on the display (80) works.
- Production plant or other industrial applications provided being in a central database for a variety of tasks
- Network connection on the display (80) reproducible sequences of actions, Rendering alternatives to the task-related selection and / or required inputs of information displayable, whereby the user selects the application functions (app) corresponding to the task in hand and processes them interactively using the input means and observing the representations on the display (80).
- a work system with at least one
- Embodiment of the switching device a central system and several
- Output interface (93) generates task fulfillment commands via at least one control panel via a menu control module (96) and optionally to the central system (Z), all of the multiple workspace users (T), individual ones of the multiple workspaces Participants (T).
- a working method comprising a mobile switching device (1) designed as a handheld device and input means and a display for
- Provision of a plurality of task application functions (app) in a central database, via a network connection on the display (80) of the switching device (1) Display of repeatable sequences of actions Participant tasks and / or alternatives to the task-related selection and / or necessary inputs from Information, by a user selection of application functions (app) corresponding to the task, Execution of these tasks interactively using the input means and taking into account the representations on the display (80).
- Subscriber task on the display (80) can be selected that after selecting a participant task, a transmission of a selected participant task by pressing the switching device (1) to several
- Subscribers take place at the subscribers (T; T1, T2, T3) in each case prioritizing the subscriber tasks received over a given work period by means of task execution commands, that a consistency check and a comparison of the Subscriber tasks between the subscribers (T1, T2, T3) are performed in such a way that it is avoided that the same task is assigned the highest priority, that a processing of the task of the highest priority by the respective subscriber (T1, T2, T3), so that each participant (T; T1, T2, T3) fulfills a highest priority task.
- the industrial workstation (S) is a storage system and at least two subscribers (T; T1, T2, T3)
- Switching device (l) selectable menu formats control fields are provided, by means of a menu control module (96) task execution commands are generated and optionally to the central system (Z), all of the multiple workspace subscribers (T), individual ones of the multiple workspace subscribers (T).
- Switching device (1) is designed according to an Asulickungsform described herein.
- the term "along" may in particular, in the context of the hereinabove mentioned directional statements, which may relate to the progression of a contour line or a surface or which may relate to a direction of a mechanical component such as an axle or shaft, mean that the tangent to the respective one Contour line or to the respective surface in the course according to the
- Direction indication or the longitudinal extent and e.g. Center axis of the mechanical component locally deviates at an angle of at most 45 degrees, and preferably of at most 30 degrees from a reference direction or reference axis, to which or the respective direction indication is related.
- Directional information which may relate to the course of a contour line or a surface, or which may relate to a direction of a mechanical component such as an axle or shaft, in particular mean that the tangent to the respective contour line or to the respective surface in the course thereof according to
- Direction indication or the longitudinal extent and e.g. Center axis of the mechanical component locally deviates at an angle of at least 45 degrees, and preferably of at least 30 degrees from a reference direction or reference axis, to which or the respective direction indication is related.
- viewed in the direction of thickness Z means a viewing direction based on a location of the addressed features or components.
- the switching device is a use of the switching device as Device for entering logistic data in the entire field of logistics and industrial applications, for example in a storage area or in production.
- a use of the switching device in the embodiment with a display is provided as a device for inputting of logistic data and for outputting logistic data in the entire field of logistics and industrial applications, for example in a storage area or in production ,
- a use of switching devices according to the prior art in a design with a display as a device for inputting of logistic data and for the output of logistic data in the entire field of logistics and industrial applications, for example, each in a storage area or intended in production.
- Figure 1 is a plan view of an embodiment of the electrical switching device with a housing, a base body arranged therein, a
- Figure 2 is a sectional view of the embodiment of the electrical
- Figure 3 is a sectional view of the embodiment of the electrical
- Figure 4 is another plan view of the embodiment of the electrical
- FIG. 5 shows, as a first step of a sequence of steps, the sectional representation of FIG
- FIG. 1 shows an embodiment of the electrical switching device according to FIG. 1 along the line L2-L2 entered in FIG. 1, the switching device being shown in a starting position
- Figure 6 shows the embodiment of the electrical switching device according to the figure 1 in the representation of Figure 5, wherein the switching device in a
- Actuating position in which an external pressure force is exerted on a first lateral edge portion of the actuating part from an actuating side
- FIG. 7 shows the embodiment of the electrical switching device according to FIG. 1 in the illustration of FIG. 5, wherein a greater external pressure force than that of FIG. 6 is exerted
- FIG. 8 shows the embodiment of the electrical switching device according to FIG. 1 in the illustration of FIG. 5, with respect to FIG. 7 a further external pressure force is exerted on a second lateral edge section of the actuating part, which is located opposite to the first lateral edge section.
- Figure 9 is a detail of the embodiment of the electrical
- FIG. 10 shows the detail illustration of FIG. 9, wherein the switching device is in the operating state shown in FIG. 6,
- FIG. 11 shows a detailed illustration of FIG. 9, wherein the switching device is in the operating state shown in FIG. 7, FIG. 12 as the first step of a step sequence of three steps
- FIG. 1 shows a sectional view of the embodiment of the electrical switching device according to FIG. 1 along the line L12-L 2 shown in FIG. 1, the switching device being shown in a starting position, FIG.
- Figure 13 is a sectional view of the embodiment of the electrical
- Figure 14 is a sectional view of the embodiment of the electrical
- FIG. 15 shows a plan view of a further embodiment of the electrical switching device, wherein the sensors are shown as dashed lines in the top view,
- Figure 16 is a sectional view of the embodiment of the electrical
- FIG. 17 as the first step of a sequence of steps of four steps
- FIG. 15 shows a sectional view of the embodiment of the electrical switching device according to FIG. 15 along the line L16-L16 shown in FIG. 15, the switching device being shown in an initial position and the illustrated embodiment of the switching device having a flexible actuating part,
- FIG. 18 shows the embodiment of the electrical switching device according to FIG. 15 in the illustration of FIG. 17, wherein the switching device is shown in an actuating position in which an external pressure force is exerted on a first lateral edge section of the actuating part from an actuating side,
- FIG. 19 shows the embodiment of the electrical switching device according to FIG. 1 in the illustration of FIG. 17, wherein a greater external pressure force is exerted than in FIG. 18,
- FIG. 20 shows the embodiment of the electrical switching device according to FIG. 1 in the representation of FIG. 17, with respect to FIG. 19 a further external pressure force is exerted on a second lateral edge section of the actuating part, which is situated opposite to the first lateral edge section.
- Figure 21 is a detail of the embodiment of the electrical
- FIG. 22 shows the detailed view of FIG. 20, with the switching device being in the operating state shown in FIG. 17,
- FIG. 23 shows the detailed view of FIG. 20, with the switching device being in the operating state shown in FIG. 18,
- FIG. 24 as the first step of a step sequence of five steps
- FIG. 15 shows a sectional view of the embodiment of the electrical switching device according to FIG. 15 along the line L16-L16 shown in FIG. 15, the switching device being shown in an initial position and the illustrated embodiment of the switching device having a rigid actuating part,
- FIG. 25 shows the embodiment of the electrical switching device according to FIG. 15 in the illustration of FIG. 24, wherein the switching device is shown in an actuating position in which an external pressure force is exerted on a first lateral edge section of the actuating part from an actuating side,
- FIG. 26 shows the embodiment of the electrical switching device according to FIG. 15 in the illustration of FIG. 24, wherein a greater external pressure force is exerted than in FIG.
- FIG. 27 shows the embodiment of the electrical switching device according to FIG. 15 in the illustration of FIG. 24, wherein, with respect to FIG. 25, a further external pressure force is exerted on a second lateral edge section of the actuating part, which is located opposite to the first lateral edge section.
- FIG. 28 shows the embodiment of the electrical switching device according to FIG. 15 in the representation of FIG. 24, wherein, with respect to FIG. 27, in a further operating state there is no external pressure force on a lateral one
- FIG. 29 as the first step of a step sequence of four steps
- FIG. 15 shows a sectional view of the embodiment of the electrical switching device according to FIG. 15 along the line L29-L29 shown in FIG. 15, the switching device being shown in an initial position and the illustrated embodiment of the switching device having a rigid actuating part,
- FIG. 30 shows the embodiment of the electrical switching device according to FIG. 15 in the illustration of FIG. 29, wherein the switching device is shown in an actuated position in which external pressure forces are exerted on mutually opposite lateral edge sections of the actuating part from the actuating side,
- FIG. 31 shows the embodiment of the electrical switching device according to FIG. 15 in the illustration of FIG. 29, wherein a greater external pressure force is exerted than in FIG. 25,
- FIG. 32 shows the embodiment of the electrical switching device according to FIG. 14 in the representation of FIG. 29, wherein in contrast to FIG. 31 in a further operating state no external pressure force is exerted on a lateral edge section of the actuating part,
- Figure 33 is a plan view of another embodiment of the electrical switching device, the sensors being concealed in plan view parts are shown in dashed lines,
- Figure 34 is a sectional view of the embodiment of the electrical
- FIG. 35 as the first step of a sequence of steps of four steps
- FIG. 33 shows a sectional view of the embodiment of the electrical switching device according to FIG. 33 along the line L34-L34 shown in FIG. 33, the switching device being shown in an initial position and the illustrated embodiment of the switching device having a rigid actuating part,
- FIG. 36 shows the embodiment of the electrical switching device according to FIG. 33 in the representation of FIG. 35, wherein the switching device is shown in an actuating position in which an external pressure force is exerted on a first lateral edge section of the actuating part from an actuating side,
- FIG. 37 shows the embodiment of the electrical switching device according to FIG. 33 in the illustration of FIG. 35, wherein a greater external pressure force than that of FIG. 36 is exerted
- FIG. 38 shows the embodiment of the electrical switching device according to FIG. 33 in the illustration of FIG. 35, wherein, with respect to FIG. 37, no external pressure force is exerted on lateral edge sections of the actuating part,
- Figure 39 is a detail of the embodiment of the electrical
- FIG. 40 shows the detailed illustration of FIG. 35, wherein the switching device is in the operating state shown in FIG. 35
- FIG. 41 shows the detail illustration of FIG. 36, wherein the switching device is in the operating state shown in FIG. 36,
- FIG. 42 shows a plan view of a further embodiment of the electrical switching device, wherein the sensors are shown as dashed lines in the top view,
- Figure 43 is a sectional view of the embodiment of the electrical
- FIG. 44 as the first step of a sequence of steps of four steps
- FIG. 45 shows the embodiment of the electrical switching device according to FIG. 42 in the representation of FIG. 44, wherein the switching device is shown in an actuating position in which an external pressure force is exerted on a first lateral edge section of the actuating part from an actuating side,
- FIG. 46 shows the embodiment of the electrical switching device according to FIG. 42 in the illustration of FIG. 44, wherein a greater external pressure force is exerted than in FIG.
- FIG. 47 shows the embodiment of the electrical switching device according to FIG. 42 in the illustration of FIG. 44, and FIG. 46 shows a further external compressive force on a second lateral edge section of FIG
- Actuating part is applied, which is located opposite to the first lateral edge portion,
- Figure 48 is a detail of the embodiment of the electrical
- FIG. 49 shows the detailed view of FIG. 45, wherein the switching device is in the operating state shown in FIG. 45,
- FIG. 50 shows the detailed illustration of FIG. 46, wherein the switching device is in the operating state shown in FIG. 46,
- FIG. 51 as the first step of a step sequence of three steps
- Figure 52 is a sectional view of the embodiment of the electrical
- Figure 53 is a sectional view of the embodiment of the electrical
- Switching device has no connecting layer and a peripheral edge portion of the housing part is connected to the actuating part, wherein the operating states analogous to those shown in Figures 44 to 47
- FIGS. 58 to 66 representations of various embodiments of the connecting device
- FIG. 67 shows a plan view of a further embodiment of the electrical switching device, wherein the sensors are shown as dashed lines in the top view
- Figure 68 is a sectional view of the embodiment of the electrical
- Figure 69 is a sectional view of the embodiment of the electrical
- FIG. 70 as a first step of a step sequence of four steps and in an embodiment with a rigid actuating part, the sectional view of the embodiment of the electrical switching device according to FIG. 67 along the line L68-L68 shown in FIG. 67, the switching device being shown in a starting position,
- FIG. 71 shows the embodiment of the electrical switching device according to FIG. 67 in the illustration of FIG. 67, wherein the switching device is shown in an actuating position in which an external pressure force is exerted on a first lateral edge section of the actuating part from an actuating side,
- FIG. 72 shows the embodiment of the electrical switching device according to FIG. 42 in the illustration of FIG. 67, wherein a greater external pressure force is exerted than in FIG.
- FIG. 73 shows the embodiment of the electrical switching device according to FIG. 42 in the illustration of FIG. 63, wherein the switching device is in the initial state shown in FIG. 44,
- FIG. 74 as the first step of a step sequence of five steps and in an embodiment with a flexible actuating part, the sectional view of the embodiment of the electric switching device according to FIG. 68 along the line L68-L68 shown in FIG. 67, the switching device being shown in a starting position and FIG wherein the illustrated embodiment of the switching device comprises a rigid actuating part,
- FIG. 75 shows the embodiment of the electrical switching device according to FIG. 68 in the illustration of FIG. 68, wherein the switching device is shown in an actuating position in which an external pressure force is exerted on a first lateral edge section of the actuating part from an actuating side,
- FIG. 76 shows the embodiment of the electrical switching device according to FIG. 68 in the illustration of FIG. 68, wherein a greater external pressure force than that of FIG. 75 is exerted
- FIG. 77 shows the embodiment of the electrical switching device according to FIG. 68 in the illustration of FIG. 68, wherein, with respect to FIG. 76, a further external pressure force is exerted on a second lateral edge section of the actuating part, which is located opposite to the first lateral edge section.
- FIG. 78 shows the embodiment of the electrical switching device according to FIG. 64 in the illustration of FIG. 68, wherein, in contrast to FIG. 77, in a further operating state no external pressure force on a lateral one
- FIG. 79 shows a plan view of a further embodiment of the electrical switching device, wherein the sensors are shown as dashed lines in plan view parts, wherein the connecting device is formed differently than in the preceding figures and wherein a display is integrated in the body,
- Figure 80 is a sectional view of the embodiment of the electrical
- Figure 81 is a sectional view of the embodiment of the electrical
- Switching device along the line L81-L81 entered in FIG. 79, 82 shows a plan view of a further embodiment of the electrical switching device, wherein the sensors are shown as dashed lines in plan view parts, wherein the connecting device is formed differently than in the preceding figures and a plurality of parts and wherein a display is integrated in the body,
- Figure 83 is a sectional view of the embodiment of the electrical
- Figure 84 is a sectional view of the embodiment of the electrical
- FIG. 85 shows a plan view of a further embodiment of the electrical switching device, wherein the sensors are shown as dashed lines in plan view parts, wherein the connecting device is formed differently than in the preceding figures and as a transparent layer and wherein a display is integrated in the body,
- Figure 86 is a sectional view of the embodiment of the electrical
- Figure 87 is a sectional view of the embodiment of the electrical
- FIG. 88 is an exploded perspective view of an embodiment of the electrical switching device with a representation of the electrical connection of an integrated in the operating part display to electrical components of the body,
- FIG. 89 shows a perspective illustration of a further embodiment of the electrical switching device with a view from the illustration of FIG Representation of the electrical connection of an integrated in the operating part display
- FIGS. 90 to 94 representations of a further embodiment of the electrical switching device with a housing
- Figures 95 to 102 display formats one in embodiments of the
- Figure 103 is a flow chart for a logistics process
- Embodiments of the switching device can be executed with a display
- FIG. 104 shows a representation of the menu control, with the menu representations with tasks to be fulfilled, in a display of an embodiment of a
- Figure 105 is a functional representation of an embodiment of a
- FIG. 106 shows a functional representation of an embodiment of the
- Switching device with a display and a processing device and an external working device with a central system and external
- Figure 107 is a functional illustration of an embodiment of the
- Switching device with a display and a processing device and an external working device with a central system and external
- the display is arranged in the main body.
- an electrical switching device 1 for generating a plurality of switching states, which can be tapped off via electrical lines or an electrical contact of a An horrnchtung in particular for the generation of positioning commands for an adjusting device.
- the electrical switching device 1 is actuated on an actuating side S1 thereof.
- a Cartesian Coordinate system entered with an X-axis, a Y-axis or thickness direction Z and a z-axis.
- the Z-axis extends in the thickness direction Z of the electric switching device 1. With respect to the thickness direction Z of the electric
- Switching device 1 is in the Z direction opposite to the operating side S1, a rear side S2 of the electrical switching device 1 of the same located.
- the switching device 1 can be determined by one or more participants T or T1, T2, T3 of the work system S participant task to be displayed if necessary, and as task execution command via a transmission path 93a to the central system Z or a or several subscribers T or T1, T2, T3 of the workstation S, which may be an industrial workstation S and in particular a storage system or a production facility.
- the electric switching device 1 has a main body 10 having a first or upper surface or terminal surface 10a facing the operating side S1 of the electric switching device 1, and a second or lower surface 10b located opposite to the upper surface 10a is.
- the main body 10 can be designed in particular plate-shaped and in particular rectangular.
- the planar extension of the main body 10 extends transversely to the thickness direction Z and along the X-coordinate and the Y-coordinate.
- the X-coordinate may be defined as an average connecting line of the centroids of the smallest cross-sectional areas that arise along a longitudinal direction, or an averaged connecting line through them.
- the electric switching device 1 has an operating part or an actuating plate 20, which extends transversely to the thickness direction Z and which, viewed in the thickness direction Z, is arranged on the base body 10 on the side of its first surface 10a.
- the actuating part 20 can in particular as
- substantially rectangular herein is a shape understood in which each extending along each edge lines parallel or approximately parallel and at least one of the corner regions may have rounded corner line sections.
- a running of edge lines "approximately parallel" to one another here means that the respective edge lines extend relative to one another such that a maximum of an angle of 20 degrees exists between the tangents to the respective edge lines at points of the respective edge lines lying opposite one another Seen in plan view or in the Z-direction also be designed oval or circular.
- the switching device according to the invention on a housing device H, which is formed from the plate-shaped base body 10 with the connection surface 10a, which faces an operating side S1 of the electrical switching device 1, and a housing part H1.
- the operating part 20 has an actuating surface 20 a, which the
- Actuating side S1 of the electric switching device 1 faces, and opposite to this located and the connection surface 10a of the
- Actuating surface 20a results in the plan view of the actuating part 20, in particular in the thickness direction or the Z direction.
- the main body 10 can be embodied, in particular, as a printed circuit board arrangement which has a printed circuit board 10L made of a printed circuit board material and electronic components integrated therewith.
- a plurality of electronic components K are arranged on the lower surface 10b of the base body 10, which are connected to printed conductors of the printed circuit board 10L.
- the electronic components K can also be realized in other ways than illustrated.
- the electrical switching device 1 has a connecting device 30 with at least one connecting layer of an elastic material. It can be provided that the connecting device 30 from at least one
- Connection layer consists, that is, the switching device 1 no further
- each of the at least one connecting layer be continuously contiguous in their planar extension.
- connection layer in the entire thickness of continuous recess or have.
- the at least one connection layer of the connection device 30 or the connection device 30 is generally provided with a first surface 30a at a connection region or in the z-direction inner region 20c of the connection surface 20b of the actuation part 20 and with a second one
- the connecting device 30 consists of a connecting layer 31, which with a first surface 31a on a
- the elastic material may - in particular in each of the mentioned herein
- Embodiments - be a self-adhesive material, so that the
- Bonding layer 31 adheres to the inner regions 10c, 20c.
- the connection layer 31 is adhesively bonded to one of the inner regions 10c, 20c or to both of the inner regions 10c, 20c by means of an adhesive layer.
- the connecting device 30 of a connecting layer 31 a first adhesive layer 30i, which between the
- Connecting layer 31 and the terminal surface 10a of the base body 10 is located, and a first adhesive layer 30i, which is located between the connecting layer 31 and the terminal surface 10a of the base body 10 is formed, or consists of these layers.
- the adhesive material may in particular be elastic Be material.
- Connecting layer 31 extend over the entire connection surface 10b or the entire connection surface 20b, if one of the connection surfaces is larger than the other at least in one extension direction and depending on which of the connection surfaces is larger.
- the size of the inner regions 10c, 20c, as illustrated in FIGS. 1 to 3 can also be defined such that the surface area thereof is at most 75% of the size of the connection surface 20b of the actuating part 20 or within a circle whose area is at most 75% of the size of the connection surface 20b of the operating part 20.
- the centroid FS of the actuating surface 20a of the actuating part 20 is seen in its planar extent within the inner region 20c of the connecting surface 20b of the actuating part 20 and within the connecting layer 31.
- the actuating part 20 projects from the centroid FS of seen over the
- Connecting portion or inner portion 20c of the connection surface 20b seen in the planar extension of the base 10 has projecting portion 20d. It can be provided in particular that the above
- Connection layer 31 completely surrounds, that surrounds the connection region or inner region 20c or the connection layer 31.
- the protruding area is designated by the reference numeral 20d. This is performed in the embodiment of Figure 1, the connecting layer 31 circumferentially. After that, the terminal surface 20b of the operating part 20 is formed of the connecting portion 20c and the protruding portion 20d.
- the material of the connecting layer 31 is elastic in that it is a Compressing generates a restoring force.
- the material of the connecting layer 31 is elastic in that it is a Compressing generates a restoring force.
- Connecting layer 31 may be formed in particular of an acrylic material.
- the material may be a scha umförmiges acrylic material.
- the material may be a scha umförmiges acrylic material.
- the bonding layer 31 may also be formed of silicone or a foam material.
- a display is arranged in the base body 10 and the display is located in the thickness direction Z at least partially within the connection layer 31, the
- Connecting layer 31 may be formed of an optically transparent material, so that behind the connection layer 31 lying display elements are visible.
- the thickness of the bonding layer 31 in the Z direction may be between 0.2 mm and 10 mm, but preferably between 0.2 mm and 5 mm.
- the housing part H1 of the housing device H comprises: a side wall H4 which at least partially surrounds the connecting device 30, as far as this part of the switching device 1 is concerned, and the actuating part 20 in the thickness direction Z, and a marginal section H5 which extends to the actuation side S1 down to the
- Side wall H4 connects and forms a central opening H7, in which extends at least partially the display 80.
- the side wall H4 extends along the Z direction and may be referred to as the
- Actuating 20 may be formed continuously rotating wall.
- the side wall H4 may be configured to partially surround the operating part 20 along its circumference, e.g. has a plurality along the circumference of the actuating part 20 distributed arranged recesses.
- the side wall H4, e.g. emanate laterally from the actuating part 20 and in particular follow the outer surface 14 resulting in the Z-direction.
- the housing part H1 have a holding device H9, of which the base body 10 is received and on the base body 10 may be attached.
- the holding device H9 can be designed as a base or according to the figure 2 as a holding arm.
- the housing part H1 has a bottom part H10 and a cover part H20.
- the holding device H10 can be designed as an attachment of the bottom part H10.
- the bottom part H10 and the cover part G20 may be made together in one piece, e.g. by a casting process and in particular a plastic injection molding process.
- the housing is designed as a two-part housing, wherein the bottom part H10 as a first part and the cover part H20 are formed as a second part and the cover part H20 is placed on the bottom part H10 and fixed thereto, so that the housing forms a part in total.
- Cover part G20 may each be formed in particular cup-shaped. Also, the housing part H1 may be formed such that only the bottom part H10 or only the cover part G20 may each be formed in particular cup-shaped.
- Thickness Z seen at least partially located outside of the operating part 20.
- the side wall H4 surround the base body 10 along its circumference. Adjoining the side wall H4 in the direction of the actuating side S1 is an edge section H5 of the housing part H1, which has an inner central opening H7, seen in the Z direction. The outer edge of the actuator plate 20 extends along the opening H7 forming inner edge H8.
- the switching device 1 may be configured such that the outer edge portion 21 of the operation plate 20 is located inside the inner edge edge portion H5 of the housing part H1 as seen in the Z direction, so that the operation part 20 viewed in the Z direction within the opening H7 is located ( Figure 2).
- a gasket G40 may be located between the edge portion H5 of the housing part H1 and an edge portion of the actuating part 20, which connects these edge portions together ( Figure 16), in particular around the interior of the housing part H1 to the outside seal.
- the gasket G40 may be part of the connecting device 30.
- the seal G40 may be formed of an elastic material, so that it supports the restoring ability of the connecting layer 31.
- the seal may also be located in sections along the circumference of the edge portion H5.
- Edge portion 21 of the actuator plate 20 and the inner edge edge portion H5 of the housing part H1 consist ( Figure 34), wherein a sealing device or a cover device G50, for. in the form of a cover ring or a
- Seal housing part H1 to the outside.
- the switching device 1 in the presence of the seal G40 without
- Connection layer 31 may be carried out, so that the seal G40 the
- Connecting device 30 forms.
- a further embodiment of the switching device 1 can be designed such that the outer edge portion 21 of the actuator plate 20 protrudes beyond the inner edge edge portion H5 of the housing part H1 seen in the Z direction, so that the actuating part 20 and the outer edge portion 21 of the actuator plate 20 in overlap seen in the Z direction ( Figure 16).
- the circumferential edge section H5 of the housing part H1 is connected to the housing
- Actuating part 20 and in particular with an outer edge thereof is connected. It can be provided that the switching device 1 has no connecting layer and the edge portion H5 of the housing part H1 is designed as a return device for the actuating part 20 by this is elastically deformable.
- the bonding layer 31 may, but need not be, a resilient material and thus the actuator 20 recoverable material when the connector 30 has another component recoverable from the actuator 20, e.g. a
- the electrical switching device 1 at least one sensor or at least two sensors, the or between the base body 10 and the
- Connecting layer 31 is located or, wherein the actuating part 20 transversely to the thickness direction Z and in the extension of the X-Y plane seen over the
- each of the at least one sensor is located behind the connection device 31, as viewed in the thickness direction Z, viewed from the centroid of the operating part 20.
- the distance between the terminal surface 10a of the main body 10 and the terminal surface 20b of the operating part 20 as seen in the thickness direction Z can be detected or detected as seen at the position of the respective sensor in the X-Y plane.
- the switching device 1 may comprise a sensor device 40, which has the at least one sensor and a position-determining device with a
- Position detection function the position detection function is functionally connected to the respective sensor.
- the position determination function can be integrated in one of the electronic components K of the main body 0.
- the embodiment of the electrical switching device 1 shown in FIG. 1 has four sensors 41, 42, 43, 44. These are arranged distributed uniformly along the outer circumference of the edge line. In each case two sensors, namely in each case the sensors 41 and 43 and the sensors 42 and 44 with respect to the centroid F of the actuating surface 20a are arranged opposite one another. With each sensor 41, 42, 43, 44 can be detected in each case a position of each located at this area of the second surface in the thickness direction Z.
- the at least one sensor or the sensors can each be designed as a sensor for non-contact detection of the distance from the respective sensor to the location of the connection surface 20b of the actuating part 20 lying opposite this.
- 3 shows a sectional view of the embodiment of the electrical switching device according to the figure 1 along that in the figure 1
- FIG. 4 shows a sectional view of FIG
- Switching device 1 is thus each of the sensors 41, 42, 43, 44 designed as an optical sensor.
- sensors 41, 42, 43, 44 are provided, each of which detects the distance from the same to the position of the connection surface 20b of the actuating part 20 opposite the respective sensor in a contactless manner.
- the sensors can not only use non-contact sensors such as sensors. be optical sensors, but also be magnetically sensitive or the piezoelectric effect ausnutzende sensors.
- Sensors 41, 42, 43, 44 are each mechanical sensors, e.g. when
- Shift sensors are designed with a switching component.
- this may have a display 80 or a display panel, so that this embodiment form an input and output device.
- the display 80 can be arranged on the connection surface 10a of the main body 10 or on the actuating surface 20a of the actuating part 20 and in particular be located.
- the display 80 may be located at least partially in a recess which passes through the connection surface 10a of the
- Main body 10 or on the actuating surface 20 a of the actuating part 20th is shaped.
- the switching device 1 may have a camera device C.
- a camera device C is shown schematically by a lens integrated in the housing part H1.
- the camera device C may in particular comprise an optical system with a lens and a camera actuating device as well as an image acquisition device.
- the image acquisition device can have a barcode recognition function with which a barcode detected by means of the camera can be interpreted with regard to the functions contained therein.
- the housing part G1 and in particular the bottom part H10 may be formed of a magnetic material to the housing part G1 in a
- Display 80 or display panel which is located in a seen in the thickness direction Z inner display area 20 e of the actuating surface 20 a of the operating part 20.
- the display device becomes a display area and becomes
- the display portion 20e may be formed as a depression formed on the operation surface 20a.
- the display 80 or the display panel is functionally one
- the display 80 may have a surface-generating imaging module 81 and a screen cover plate or a carrier plate 82 located in the direction of the actuating side S1.
- the image forming module 81 may be an image output device having a display device such as a liquid display device.
- the display 80 may additionally be an output device in functional terms, in addition as input device and in this case thus as input and
- Output device can be executed. In the execution of the display 80 as an input and output device, this can also be an approximation and / or
- the proximity and / or touch-sensitive panel may in particular on or below the
- Support plate 81 may be located an approach and / or touch-sensitive panel 84 or a touch panel.
- FIG. 100 shows an embodiment of the display 80 according to FIG. 100, in which the display 80 has an approximation and / or touch-sensitive panel 84.
- Proximity and / or touch-sensitive panel 84 may be executed.
- Switching device 1 can on the actuating surface 20a thereof in
- actuation ranges B41 or B42 or B43 or B44 are assigned. These are located in corresponding edge regions of the actuating part 20, in which the respective one of the at least one sensor is arranged.
- the actuation areas are located such that an actuation or exertion of a compressive force F1, F2 having a minimum size in a respective actuation area reduces the distance between the base body 10 and the actuation part 20 only in this respective actuation area and thus only on the sensor which the respective
- FIGS. 5 to 8 an actuation of an actuating region B41 is shown in several steps.
- Centroid of the operating part 20 is located.
- the actuating part can be designed to be elastic in its planar extent in such a way that at least two actuating areas lying opposite to one another, e.g. diametrically opposed operating portions (e.g., B41 and B42) or operating portions (e.g., B41 and B43) located on the same side edge of the operating portion 20, or optionally also three or four operating portions (e.g., B41, B42, B43, and B44)
- diametrically opposed operating portions e.g., B41 and B42
- operating portions e.g., B41 and B43 located on the same side edge of the operating portion 20
- three or four operating portions e.g., B41, B42, B43, and B44
- Operation (F1, F2) can be given to provide a corresponding resilience of the operating part 20.
- Presence of a plurality of sensors of a switching device 1 is the area relation of the operating areas in the thickness direction Z seen at locations equal to the spatial relation of the places where the S are located.
- the areas in the thickness direction Z are seen and the locations of the sensors are superimposed so that the respective areal relation results.
- area relationship is understood herein to mean the relative assignment of the actuation areas in the XY plane.
- locations of the sensors is understood herein to mean the locations of the sensors in the XY plane.
- FIGS. 58 to 66 various embodiments are shown in FIGS. 58 to 66.
- connection device 30 Seen thickness direction Z and within the upper surface or connection surface 10a of the body 10 centrally arranged connection device 30 shown.
- FIGS. 67, 79, 82 show embodiments of the switching device 1 in which the connection layers are fastened in an outer region of the connection surface 20b of the actuation part 20 and with a second surface 30b on an outer region of the connection surface 10a of the base body 10 are.
- the connecting device 30 does not have a central connecting layer. Rather, the connecting device 30 is formed of a plurality of connecting layers 61, 62, 63, 64, which are arranged distributed around the centroid of the actuating part 20 along the outer edge portion 21 of the actuating part 20 via this. This array of distributed interconnect layers 61, 62, 63, 64 may also be arranged on other of the embodiments described herein.
- the connecting layers 61, 62, 63, 64 are elongated.
- the display 80 is integrated into the base plate 10, wherein the display 80 may be located on the first surface 10 a of the base plate 10.
- the actuating part is made of a formed transparent material so that representations of the display 80 on the operating side S1 can be seen.
- Connecting device 30 which also has no central connection layer, but relative to the switching device 1 according to the Figure 79 circular connection layers 61, 62, 63, 64, which arranged distributed around the centroid of the operating part 20 along the outer edge portion 21 of the actuating part 20 via this are. Also in the embodiment of the
- the display 80 is integrated into the base plate 10.
- the switching device 1 according to the figure 79 or 82 may be an additional on
- FIGS. 88 and 89 various embodiments of an electrical connection of the display 80 to electrical components K are shown by way of example
- the switching device 1 has a
- Wiring harness of lines which are connected on the one hand with electrical components of the display 80 and on the other hand with electrical components K of the bottom plate 10.
- the cable harness is through a central opening of the
- the operating areas are located such that an actuation or exerting a compressive force having a minimum size in a respective Operating range depending on the design of the connecting device and in particular the shape, number and location or arrangement of at least one
- the sensor 40 and a function processing device or evaluation device 90 (FIGS. 106 and 107) functionally connected thereto are designed in such a way that the actuation of the respective actuation range is detected by means of an activation identification function 91 during such an action.
- an approach-sensitive and / or touch-sensitive panel 82 e.g. is arranged on a plate-shaped image forming module 81 can be visualized by means of an image generator 97.
- a respective control field in the display area of a display panel or in the e.g. plate-shaped imaging module 81 of the display 80 by generation by means of the image generator 97 made visible.
- control fields can be displayed.
- the evaluation device 90 may be configured such that the activation identification function 91 receives from the at least one sensor of the switching device 1 via a function line 91 e signals corresponding to a sufficient reduction in the distance between the main body 10 and the actuating member 20, in which the operating range Identification function 91 identifies an actuation. In this way, the detection by means of a sensor 40 can be confirmed by the activation identification function 91.
- the respective control field which may correspond in position to and in particular lie in the relative position of a display actuation area, can be controlled by a menu control module 96 and an image generator 97 functionally connected thereto by means of with this functional
- proximity-sensitive and / or touch-sensitive panel 82 is functionally connected, it can be detected whether the respectively made visible in the display 80
- Control panel has been actuated by a manual gesture.
- the switching device 1 can be designed such that the operation of a control panel in a menu selection by selecting an option specified in the control area by means of touch or touch approach of the finger a switching device user of such an option, which is made available in the display area of the display 80, can take place.
- the switching device 1 can be designed such that the actuation of a control panel in menu selection by conventional activation or selection of an option specified in the control area, which is made available in the display area of the display 80, for example, by buttons or a computer mouse or other manual input device.
- the sensor signals generated by the at least one sensor which are distance values for distances between the two, depending on an actuation force F, F2 applied to the respective actuation range Base body 10 and the actuating part 20 correspond, via each connected to a sensor function lines 91 e of
- Actuator identification function 91 supplied. This determines from these sensor signals on the basis of predetermined minimum actuation values, whether, due to the respectively exerted actuation force F1, F2, an actuation of a
- Actuation range identification function 91 determined on the basis of at least one predetermined actuation minimum value, which is assigned to each sensor, whether the distance between the main body 10 and the actuating member 20 at the location of the sensor, each at one by an actuating force F1, F2 moved
- Actuating an actuation of the operating part 20 is given. It can also be provided that a plurality of limit values G1, G2 or G1, G3 are compared with the sensor values of a sensor or the sensors so that a plurality of force levels of an actuation force F1, F2 can be determined as different actuations on the same actuation range.
- the at least one Actual minimum value may be stored in the operation area identification function 91 as at least a predetermined value. Alternatively or additionally, it can be provided that the at least one actuation minimum value is supplied via an interface 95 and by means of the menu control module 96 to the actuation range identification function 91, for example once again via a
- the operation area identification function 91 determines that there is an operation of an operation area due to the above-described manner or otherwise such as touch or approach, it sends
- Actuation area identification function 91 this actuation information via a function line 91 b to an actuation module 92nd
- the actuating information which is transmitted via a function line 91 b to an actuating module 92, can also be generated differently, e.g. by touch or touch approach on an input gesture of the finger of a switch user of a control region generated in a generator 97 in the image generation module 81 or
- Control field which is made available in the display area of the display 80 as an input option, or conventional activation of such an option by pressing or a computer mouse or other manual input device is.
- Task question in particular in the form of an option is provided to the actuation module 92 via a function line 96a available.
- An option or logical question may e.g. be: "sending a number N1 of
- the menu control module 96 may be configured to display the selection of a menu level or a menu selection format, in particular with a choice over a selectable selection format in or on the operating area, to accomplish a participant task to be performed determine and to bring to the display.
- the menu control module 96 displays a task or a request via a menu on the display 80, such as a request via a menu level, that is, a menu selection format. The selection of a menu format in a displayed menu selection via a means of
- Actuation area identification function 91 in particular on the basis of one of the options described herein and, as a result of this actuation, transmitting actuation information to the menu control module 96 via function line 96a, which then provides the selected menu format on display 80.
- the menu control module 96 may also be designed in such a way that in this way, so with choices about a selectable selection format, a
- Application function which is designated in the figure 97 with the term "App”, or one of several application functions, can be selected by a said operation
- Application function "App" via the interface 95 a said operation can be selected and transmitted or is available in the menu control module 96 and can be selected.
- Participants T; T1, T2, T3 of the work system S participant task to be fulfilled on the display 80 can be selected
- the actuation module 92 determines from the information about the requested
- the task execution command is a command for a participant T to perform a task TA.
- the output interface 93 transmits the signal to an external unit, e.g. the central system or a subscriber T or T1, T2, T3 of the workstation S.
- the information about the requested subscriber task instead of the function line 96a via the function line 91a to the Actuator identification function 91 is sent, which transmits the information about the requested subscriber task together with the actuation information via the function line 91 a to the output interface 93.
- the output interface 93 transmits the task execution command via a transmission path 93a to the central system Z or to one or more subscribers T or T1, T2, T3 of the workstation S.
- the output interface 93 may in particular have a transfer function for transmitting the task execution command generally via a
- the output interface 93 may be configured such that the task execution command is sent to the central system Z and all subscribers or to all subscribers and not to the central system Z.
- Output interface 93 may also be implemented such that these alternatives are individually selectable based on menu selection or menu selection indicated by enu control module 96.
- T1, T2, T3 of the work system S to be fulfilled subscriber task to be performed, if necessary be displayed, and as task execution command over a transmission path 93a to the central system Z or one or more participants T or T1, T2, T3 of Work system S are transmitted.
- the functions of the evaluation device 90 described herein can be integrated in particular in the components K of the main body 10 and thus part of a generally mobile and in particular portable switching device and in particular the switching device 1 according to an embodiment of Figures 1 to 88 be.
- the described functions of the evaluation device 90 may be integrated in a switching device which is designed as a smartphone or as a laptop and in particular as a portable computer.
- the functions of the switching device are shown in a user-related manner.
- the actuation of the switching device in conjunction with a menu selection displayed in a control panel by the menu control module 96 is designated by the block "Physical Input.”
- the menu selection displayed in a control field by the menu control module 96 is shown in FIG For example, the block labeled "96" is shown.
- At least one spatially pronounced surface section 81 r, 83r or a spatially pronounced surface structure for the haptic detection of the respective actuation area may be formed in sections on the display surface 82a.
- Surface sections can be embodied as recessed and / or raised areas relative to the planar extent of the display surface 82a. In this way, a user can feel an actuating area within the otherwise planar, ie planar, surface 11a.
- spatially pronounced structure is meant herein that it has a plastic shape, that is, has a shape in which the surface points of the structure can be defined only by means of all three space coordinators.
- authorizations for the actuation of subscriber tasks to be carried out by subscribers for all or individual switching devices used or for tasks such as storage, production, goods receipt, to which a subscriber task to be fulfilled in each case belongs consist. It can be provided that for the operation and commanding the implementation of a participant task to be fulfilled or for selecting an associated task area a corresponding authorization must be enabled. Such a safety function can be provided in the central system ("assignment
- the activation can be carried out via the interfaces 93, 95
- a transmission of a selected participant task takes place by actuation of the switching device 1 to a plurality of subscribers T or T1, T2, T3.
- a subscriber T a production vehicle T1, a postal vehicle T2 and a production facility T3 are shown.
- the workstation S in which the work procedure takes place, can in particular be a storage system, wherein at least two subscribers T; T1, T2, T3 storage operators such as Forklift trucks, cranes, vehicles movable on a storage rack, or a combination of at least a selection thereof.
- the subscribers T or T1, T2, T3 can each have a subscriber system TS which has an interface, in particular for receiving a task execution command transmitted by an output interface 93. Furthermore, the subscriber system TS can have a priority evaluation function, with the task execution command received over a work period, in each case, a prioritization of the subscriber tasks received over a given work period being performed, which corresponds to the received user tasks
- Task Completion Commands The meaning and contents of tasks associated with a respective task execution command may be available in the subscriber T or T1, T2, T3. Alternatively or additionally, it may be provided that these may optionally be sent to the central system Z, in particular on automatic request by the respective subscriber T or T1, T2, T3 from the central system Z to the respective subscriber T or T1, T2, T3.
- a consistency check function may be performed with a comparison of those received at a time or a period in the respective active subscriber T or T1, T2, T3 Participant tasks, eg by forming an overall list of the subscriber tasks in each subscriber system TS, and comparing the subscriber tasks between the users T or T1, T2, T3 in such a way as to avoid assigning the same task the highest priority.
- such a consistency check function can also be provided in the central system Z.
- matching is done by shifting the priorities e.g. after a predetermined prioritization of the respective participants concerned, such that it is avoided that the same task is assigned the highest priority.
- a processing of the task of the highest priority by the respective subscriber T or T1, T2, T3 is carried out by a control system such that each subscriber T or T1, T2, T3 fulfills a task of the highest priority.
- a control system has, in particular, a task execution function with which the content-related subscriber tasks belonging to a respectively received task execution command are executed by the respective subscriber T or T1, T2, T3.
- this working method over a longer period such. a half or full day or several days, so that several participant tasks are performed.
- the period can be at least three times the period of the shortest time task to be performed.
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- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- Theoretical Computer Science (AREA)
- Human Computer Interaction (AREA)
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Push-Button Switches (AREA)
- Force Measurement Appropriate To Specific Purposes (AREA)
- Switch Cases, Indication, And Locking (AREA)
Abstract
Description
Claims
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102014002534 | 2014-02-21 | ||
| DE102014002382.6A DE102014002382B4 (de) | 2014-02-24 | 2014-02-24 | Schaltvorrichtung, Verwendung der Schaltvorrichtung, Arbeitssystem sowie Arbeitsverfahren |
| PCT/EP2015/000408 WO2015124319A2 (de) | 2014-02-21 | 2015-02-23 | Schaltvorrichtung, verwendung der schaltvorrichtung, arbeitssystem sowie arbeitsverfahren |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP3108339A2 true EP3108339A2 (de) | 2016-12-28 |
| EP3108339B1 EP3108339B1 (de) | 2020-03-18 |
Family
ID=52627157
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP15707871.8A Active EP3108339B1 (de) | 2014-02-21 | 2015-02-23 | Schaltvorrichtung, verwendung der schaltvorrichtung, arbeitssystem sowie arbeitsverfahren |
Country Status (3)
| Country | Link |
|---|---|
| US (1) | US20170169962A1 (de) |
| EP (1) | EP3108339B1 (de) |
| WO (1) | WO2015124319A2 (de) |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR102743945B1 (ko) * | 2022-09-07 | 2024-12-17 | 주식회사 켐트로닉스 | 압력 스위치 장치 및 이를 구비하는 인쇄 회로 기판 |
Family Cites Families (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS55143722A (en) * | 1979-04-26 | 1980-11-10 | Nissan Motor | Switching device |
| US20060181517A1 (en) * | 2005-02-11 | 2006-08-17 | Apple Computer, Inc. | Display actuator |
| DE102004017579B4 (de) * | 2004-04-07 | 2008-08-28 | Lando Huber-Denzel | Kommissionieranalge für Medikamente und Verfahren zum Kommissionieren |
| JP2008009584A (ja) * | 2006-06-28 | 2008-01-17 | Matsushita Electric Ind Co Ltd | タッチパネル |
| US8279188B2 (en) * | 2007-01-04 | 2012-10-02 | Nissha Printing Co., Ltd. | Protective panel having touch panel function |
| US8137162B2 (en) * | 2007-07-25 | 2012-03-20 | Edmond Arzuman Abrahamians | Semiconductor wafer polishing machine |
| US7630200B1 (en) * | 2008-05-29 | 2009-12-08 | Research In Motion Limited | Electronic device and tactile touch screen display |
-
2015
- 2015-02-23 US US15/120,560 patent/US20170169962A1/en not_active Abandoned
- 2015-02-23 EP EP15707871.8A patent/EP3108339B1/de active Active
- 2015-02-23 WO PCT/EP2015/000408 patent/WO2015124319A2/de not_active Ceased
Also Published As
| Publication number | Publication date |
|---|---|
| EP3108339B1 (de) | 2020-03-18 |
| WO2015124319A2 (de) | 2015-08-27 |
| WO2015124319A3 (de) | 2015-10-22 |
| US20170169962A1 (en) | 2017-06-15 |
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